We report a facile colloidal synthesis of gallium (Ga) nanoparticles with the mean size tunable in the range of 12-46 nm and with excellent size distribution as small as 7-8%. When stored under ambient conditions, Ga nanoparticles remain stable for months due to the formation of native and passivating Ga-oxide layer (2-3 nm). The mechanism of Ga nanoparticles formation is elucidated using nuclear magnetic resonance spectroscopy and with molecular dynamics simulations. Size-dependent crystallization and melting of Ga nanoparticles in the temperature range of 98-298 K are studied with X-ray powder diffraction, specific heat measurements, transmission electron microscopy, and X-ray absorption spectroscopy. The results point to delta (δ)-Ga pol...
The effect of the oxidation of gallium nanoparticles (Ga NPs) on their plasmonic properties is inves...
Nanoparticles produced from gallium-based liquid metal alloys have been explored for developing appl...
Nanoscale photonic functionalities based on light-induced structural transitions in nanoparticles ha...
We report a facile colloidal synthesis of gallium (Ga) nanoparticles with the mean size tunable in t...
New methods for the production of colloidal Ga nanoparticles (GaNPs) are introduced based on the eva...
Paper presented at the SPIE Optics + Optoelectronics, held in Prague (Czech Republic) on April 24-27...
Nanoparticles produced from gallium-based liquid metal alloys have been explored for developing appl...
<p>Expanding the role of plasmonics in tomorrow's technology requires a broader knowledge base from ...
Nanoparticles (NPs) of gallium-based liquid metal (LM) alloys have potential applications in flexibl...
We discovered that a low-power laser light can dramatically influence and regulate nanoparticles sel...
This Accepted Manuscript is available for reuse under a CC BY-NC-ND 3.0 licence after the 12 month e...
Gallium is a plasmonic material offering ultraviolet to near-infrared tunability, facile and scalabl...
We have observed reversible structural transformations, induced by optical excitation at 1.55 microm...
Paper presented at the SPIE Optics + Optoelectronics, held in Prague (Czech Republic) on April 24-27...
Metallic nanoparticles have the potential to play a key role in future, highly-integrated photonic d...
The effect of the oxidation of gallium nanoparticles (Ga NPs) on their plasmonic properties is inves...
Nanoparticles produced from gallium-based liquid metal alloys have been explored for developing appl...
Nanoscale photonic functionalities based on light-induced structural transitions in nanoparticles ha...
We report a facile colloidal synthesis of gallium (Ga) nanoparticles with the mean size tunable in t...
New methods for the production of colloidal Ga nanoparticles (GaNPs) are introduced based on the eva...
Paper presented at the SPIE Optics + Optoelectronics, held in Prague (Czech Republic) on April 24-27...
Nanoparticles produced from gallium-based liquid metal alloys have been explored for developing appl...
<p>Expanding the role of plasmonics in tomorrow's technology requires a broader knowledge base from ...
Nanoparticles (NPs) of gallium-based liquid metal (LM) alloys have potential applications in flexibl...
We discovered that a low-power laser light can dramatically influence and regulate nanoparticles sel...
This Accepted Manuscript is available for reuse under a CC BY-NC-ND 3.0 licence after the 12 month e...
Gallium is a plasmonic material offering ultraviolet to near-infrared tunability, facile and scalabl...
We have observed reversible structural transformations, induced by optical excitation at 1.55 microm...
Paper presented at the SPIE Optics + Optoelectronics, held in Prague (Czech Republic) on April 24-27...
Metallic nanoparticles have the potential to play a key role in future, highly-integrated photonic d...
The effect of the oxidation of gallium nanoparticles (Ga NPs) on their plasmonic properties is inves...
Nanoparticles produced from gallium-based liquid metal alloys have been explored for developing appl...
Nanoscale photonic functionalities based on light-induced structural transitions in nanoparticles ha...